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Infusible acrylic thermoplastic resins: Tailoring of chemorheological properties

机译:不霉菌丙烯酸热塑性树脂:剪裁的化学性能

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摘要

Infusible liquid resins that polymerize into a thermoplastic are desirable for many applications. Similar to unsaturated and vinylester thermosetting systems, they consist of polymers dissolved in reactive monomer. This work presents a method to decrease cycle time by tuning the molecular weight and concentration of the predissolved polymer in the resin. Variation of these properties allows precise control of the viscosity which in turn controls the time at which peak exotherm is reached, the maximum temperature for a given part thickness, and cure time. Predictive models for the viscosity dependence on molecular weight, polymer concentration, shear rate, and temperature are developed. Two fiberglass panels are fabricated and tested; one with a lower molecular weight (M-w similar to 30 kg mol(-1)) poly(methyl methacrylate) dissolved in methyl methacrylate and the second with higher molecular weight (M-w similar to 500 kg mol(-1)) predissolved polymer in the resin. Mechanical properties are indistinguishable but the lower molecular weight panel cures up to three times faster. (c) 2019 Wiley Periodicals, Inc.
机译:在许多应用中,可导入聚合到热塑性塑料中的液体树脂。类似于不饱和和乙烯酯热固性系统,它们由溶解在反应性单体中的聚合物组成。该工作呈现了通过调节树脂中预先溶解的聚合物的分子量和浓度来降低循环时间的方法。这些性能的变化允许精确控制又逆达到峰值放热的时间的粘度,给定部件厚度的最高温度和固化时间。开发了用于粘度依赖性对分子量,聚合物浓度,剪切速率和温度的预测模型。制造和测试两个玻璃纤维面板;分子量较低的一个(MW类似于30kg mol(-1))聚(甲基丙烯酸甲酯)溶解在甲基丙烯酸甲酯中,第二分子量(Mw类似于500kg mol(-1))预先溶解的聚合物树脂。机械性能难以区分,但下部分子量面板较快地愈合了三倍。 (c)2019 Wiley期刊,Inc。

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